Siemens SIMOVERT MASTERDRIVES IGD8 Inverter Control Module 6SE7035-7GK84-1JC2
Manufacturer: Siemens
Condition: Brand New
Lead Time: In Stock
Origin: Germany
Warranty: 12 Months
Email: [email protected]
whatsApp: +86-18150117685
- Overview
- Product Overview
- Key Functions
- Official Specifications
- Frequently Asked Questions
- Compatibility & Ordering Notes
- Hot Selling Models
- Recommended Products
Overview
Siemens • SIMOVERT MASTERDRIVES
6SE7035-7GK84-1JC2 SIMOVERT MASTERDRIVES IGD8 Inverter Control Module
The IGD8 spare module is assigned to SIMOVERT MASTERDRIVES converter equipment operating from 500 to 690 V three-phase AC or a 675 to 930 V DC link at the documented current classes.
At a Glance
| Brand | Siemens |
|---|---|
| Model | 6SE7035-7GK84-1JC2 |
| Product Type | Inverter control module |
| Core Function | Provides the IGD8 control-interface function for the specified high-power converter devices |
| Application or Compatible Series | SIMOVERT MASTERDRIVES high-power converter systems |
Exact Identification
Match 6SE7035-7GK84-1JC2 character by character and confirm the complete SIMOVERT MASTERDRIVES IGD8 Inverter Control Module designation.
Interface Arrangement
Confirm the installed supply, ports, field connections and required accessories before wiring the replacement.
Configuration Check
Preserve the approved engineering project, network parameters and application data used by the installed system.
Product Overview
The IGD8 spare module is assigned to SIMOVERT MASTERDRIVES converter equipment operating from 500 to 690 V three-phase AC or a 675 to 930 V DC link at the documented current classes.
The board is identified for IGD8-equipped high-power converter devices rather than for general-purpose controller use. The installed converter must match the stated AC and DC-link voltage classes and one of the documented current ratings. The converter hardware, connectors, parameter backup and safe isolation procedure must be verified before replacement.
Key Functions
Converter-Specific Control Interface
The board is identified for IGD8-equipped high-power converter devices rather than for general-purpose controller use.
High-Voltage Device Pairing
The installed converter must match the stated AC and DC-link voltage classes and one of the documented current ratings.
Controlled Spare Exchange
The converter hardware, connectors, parameter backup and safe isolation procedure must be verified before replacement.
Official Specifications
| Matched AC Voltage Class | 500 to 690 V three-phase |
|---|---|
| Matched Line Frequency | 50/60 Hz |
| Matched DC-Link Voltage Class | 675 to 930 V DC |
| Matched Device Current Ratings | 570 A and 1080 A |
| Net Weight | 0.547 kg |
Frequently Asked Questions
Which converter voltage class is associated with 6SE7035-7GK84-1JC2?
Use the board only in the documented 500 to 690 V three-phase converter class or its specified DC-link range.
Which current ratings must match before installing 6SE7035-7GK84-1JC2?
Confirm that the converter device corresponds to the documented 570 A or 1080 A configuration.
What should I archive before changing 6SE7035-7GK84-1JC2?
Save the complete drive project, parameter set, firmware context, fault history and commissioning record.
How do I make the converter safe before removing 6SE7035-7GK84-1JC2?
Isolate every supply, wait for the DC link to discharge and prove absence of voltage using the approved procedure.
Can I replace 6SE7035-7GK84-1JC2 with a visually similar board?
No; match the complete order number and the converter hardware assignment before fitting any substitute.
How should I protect 6SE7035-7GK84-1JC2 during handling?
Use grounded electrostatic-discharge precautions and avoid touching connectors or electronic components.
What checks follow installation of 6SE7035-7GK84-1JC2?
Verify all connectors, control power, diagnostics, restored parameters and the authorized low-risk functional test.
Compatibility & Ordering Notes
Compatibility Checklist
- Use only with the converter device assignment documented for this IGD8 module.
- Do not interchange it with a different voltage or current-class control board.
- Restore and validate the original converter parameters before operation.